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Sensitive magnetic biodetection using magnetic multi-core nanoparticles and RCA coils

机译:使用磁性多核纳米粒子和RCA线圈进行灵敏的磁性生物检测

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摘要

We use functionalized iron oxide magnetic multi-core particles of 100 nm in size (hydrodynamic particle diameter) and AC susceptometry (ACS) methods to measure the binding reactions between the magnetic nanoparticles (MNPs) and bio-analyte products produced from DNA segments using the rolling circle amplification (RCA) method. We use sensitive induction detection techniques in order to measure the ACS response. The DNA is amplified via RCA to generate RCA coils with a specific size that is dependent on the amplification time. After about 75 min of amplification we obtain an average RCA coil diameter of about 1 µm. We determine a theoretical limit of detection (LOD) in the range of 11 attomole (corresponding to an analyte concentration of 55 fM for a sample volume of 200 µL) from the ACS dynamic response after the MNPs have bound to the RCA coils and the measured ACS readout noise. We also discuss further possible improvements of the LOD.
机译:我们使用尺寸为100 nm的功能化氧化铁磁性多核颗粒(流体动力学粒径)和AC磁化法(ACS)方法来测量磁性纳米颗粒(MNP)与DNA片段产生的生物分析产物之间的结合反应,滚圆放大(RCA)方法。我们使用灵敏的感应检测技术来测量ACS响应。通过RCA扩增DNA,以生成具有特定大小的RCA线圈,该大小取决于扩增时间。放大约75分钟后,我们得到的平均RCA线圈直径约为1 µm。我们将MNP结合到RCA线圈并进行测量后,从ACS动态响应中确定理论上的检出限(LOD)在11个小原子范围内(对应于200 µL样品体积的分析物浓度为55 fM) ACS读出噪声。我们还将讨论LOD的进一步可能的改进。

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